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Long-Term Cloth-Changing Person Re-identification

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arxiv 2005.12633 v3 pith:5SK6XWLC submitted 2020-05-26 cs.CV

classification cs.CV
keywords personre-idltcccloth-changingclothingdatasetfocusshape
verification ladder T0 review T1 audit T2 compute T3 formal
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Person re-identification (Re-ID) aims to match a target person across camera views at different locations and times. Existing Re-ID studies focus on the short-term cloth-consistent setting, under which a person re-appears in different camera views with the same outfit. A discriminative feature representation learned by existing deep Re-ID models is thus dominated by the visual appearance of clothing. In this work, we focus on a much more difficult yet practical setting where person matching is conducted over long-duration, e.g., over days and months and therefore inevitably under the new challenge of changing clothes. This problem, termed Long-Term Cloth-Changing (LTCC) Re-ID is much understudied due to the lack of large scale datasets. The first contribution of this work is a new LTCC dataset containing people captured over a long period of time with frequent clothing changes. As a second contribution, we propose a novel Re-ID method specifically designed to address the cloth-changing challenge. Specifically, we consider that under cloth-changes, soft-biometrics such as body shape would be more reliable. We, therefore, introduce a shape embedding module as well as a cloth-elimination shape-distillation module aiming to eliminate the now unreliable clothing appearance features and focus on the body shape information. Extensive experiments show that superior performance is achieved by the proposed model on the new LTCC dataset. The code and dataset will be available at https://naiq.github.io/LTCC_Perosn_ReID.html.

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  1. Colors See Colors Ignore: Clothes Changing ReID with Color Disentanglement

    cs.CV 2025-07 conditional novelty 5.0 of 10

    CSCI uses color histograms as self-supervised targets and a two-step S2A self-attention to reduce clothing-color bias, improving CC-ReID on four benchmarks.

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